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Probabilistic investigation of RFEM topologies for slope stability analysis

机译:用于边坡稳定性分析的RFEM拓扑的概率研究

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The Random Finite Element Method (RFEM) is an increasingly popular tool in geotechnical engineering, especially for analysis of spatial variation and uncertainty in slope stability. Although the method has gained prominence in recent years, topological effects of strong and weak zones and the impact of their locations remain largely unknown. Although numerous potential slip surface realisations can be generated with RFEM, probabilistic failure statistics are often governed by several representative slip surfaces (RSS). In this research, random field similarity methods and clustering techniques are coupled with RFEM slope stability simulation to determine the impact of shear strength spatial patterns on slope failure mechanisms and safety factors. Regions of significance are highlighted within a case study of a Victorian open-cutbrown coal mine, with particular attention given to the effects on the slope failure surface as well the factor of safety. Results are presented of Factor of Safety distributions when particular slip surfaces and clustering constraints are imposed, providing further understanding of the impacts of shear strength characteristics on probabilistic simulation results.
机译:随机有限元方法(RFEM)在岩土工程中越来越流行,特别是用于分析空间变化和边坡稳定性的不确定性。尽管该方法近年来受到关注,但强区和弱区的拓扑效应及其位置的影响仍然未知。尽管使用RFEM可以生成许多潜在的滑动面实现,但是概率故障统计通常由几个代表性滑动面(RSS)控制。在这项研究中,随机场相似性方法和聚类技术与RFEM边坡稳定性模拟相结合,以确定抗剪强度空间模式对边坡破坏机理和安全系数的影响。在一个维多利亚式露天煤矿的案例研究中,重点突出了重要区域,并特别注意了对边坡破坏面的影响以及安全因素。当施加特定的滑动面和聚类约束时,将显示安全系数分布的结果,从而进一步了解剪切强度特性对概率模拟结果的影响。

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